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IL-4-BATF 信号通路直接调节实验性食物过敏中产生 IL-9 的黏膜肥大细胞(MMC9)功能。

IL-4-BATF signaling directly modulates IL-9 producing mucosal mast cell (MMC9) function in experimental food allergy.

机构信息

Division of Allergy and Immunology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio; Mary H Weiser Food Allergy Center, Michigan Medicine, University of Michigan, Ann Arbor, Mich; Department of Pathology, Michigan Medicine, University of Michigan, Ann Arbor, Mich.

Mary H Weiser Food Allergy Center, Michigan Medicine, University of Michigan, Ann Arbor, Mich; Department of Pathology, Michigan Medicine, University of Michigan, Ann Arbor, Mich.

出版信息

J Allergy Clin Immunol. 2021 Jan;147(1):280-295. doi: 10.1016/j.jaci.2020.08.043. Epub 2020 Oct 15.

Abstract

BACKGROUND

This study group has previously identified IL-9-producing mucosal mast cell (MMC9) as the primary source of IL-9 to drive intestinal mastocytosis and experimental IgE-mediated food allergy. However, the molecular mechanisms that regulate the expansion of MMC9s remain unknown.

OBJECTIVES

This study hypothesized that IL-4 regulates MMC9 development and MMC9-dependent experimental IgE-mediated food allergy.

METHODS

An epicutaneous sensitization model was used and bone marrow reconstitution experiments were performed to test the requirement of IL-4 receptor α (IL-4Rα) signaling on MMC9s in experimental IgE-mediated food allergy. Flow cytometric, bulk, and single-cell RNA-sequencing analyses on small intestine (SI) MMC9s were performed to illuminate MMC9 transcriptional signature and the effect of IL-4Rα signaling on MMC9 function. A bone marrow-derived MMC9 culture system was used to define IL-4-BATF signaling in MMC9 development.

RESULTS

Epicutaneous sensitization- and bone marrow reconstitution-based models of IgE-mediated food allergy revealed an IL-4 signaling-dependent cell-intrinsic effect on SI MMC9 accumulation and food allergy severity. RNA-sequencing analysis of SI-MMC9s identified 410 gene transcripts reciprocally regulated by IL-4 signaling, including Il9 and Batf. Insilico analyses identified a 3491-gene MMC9 transcriptional signature and identified 2 transcriptionally distinct SI MMC9 populations enriched for metabolic or inflammatory programs. Employing an in vitro MMC9-culture model system showed that generation of MMC9-like cells was induced by IL-4 and this was in part dependent on BATF.

CONCLUSIONS

IL-4Rα signaling directly modulates MMC9 function and exacerbation of experimental IgE-mediated food allergic reactions. IL-4Rα regulation of MMC9s is in part BATF-dependent and occurs via modulation of metabolic transcriptional programs.

摘要

背景

本研究小组先前已经确定了产生白细胞介素 9(IL-9)的黏膜肥大细胞(MMC9)是驱动肠道肥大细胞增多症和实验性 IgE 介导的食物过敏的主要来源。然而,调节 MMC9 扩张的分子机制尚不清楚。

目的

本研究假设白细胞介素 4(IL-4)调节 MMC9 的发育和 MMC9 依赖性实验性 IgE 介导的食物过敏。

方法

使用表皮致敏模型和骨髓重建实验来测试 IL-4 受体α(IL-4Rα)信号对实验性 IgE 介导的食物过敏中 MMC9 的需求。对小肠(SI)MMC9 进行流式细胞术、批量和单细胞 RNA 测序分析,以阐明 MMC9 的转录特征以及 IL-4Rα 信号对 MMC9 功能的影响。使用骨髓衍生的 MMC9 培养系统来定义 IL-4-BATF 信号在 MMC9 发育中的作用。

结果

基于表皮致敏和骨髓重建的 IgE 介导的食物过敏模型揭示了 IL-4 信号对 SI MMC9 积累和食物过敏严重程度的细胞内固有影响。SI-MMC9 的 RNA 测序分析鉴定出 410 个受 IL-4 信号调节的基因转录物,包括 Il9 和 Batf。计算机分析确定了 3491 个 MMC9 转录特征基因,并鉴定出 2 个转录上不同的 SI MMC9 群体,富含代谢或炎症程序。采用体外 MMC9 培养模型系统表明,IL-4 诱导了类似于 MMC9 的细胞的生成,这部分依赖于 BATF。

结论

IL-4Rα 信号直接调节 MMC9 的功能,并加剧实验性 IgE 介导的食物过敏反应。IL-4Rα 对 MMC9 的调节部分依赖于 BATF,并且通过调节代谢转录程序发生。

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